Equations for simple harmonic motion

    • [DOC File]UNIT 10 - Texas Tech Physics & Astronomy

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      A simple case of a vibrating object is a mass oscillating on a spring. 2.1. a. Set up a mass hanging from a spring, as shown in the picture below. Pull the mass down a few centimeters and release it. Use a motion detector to plot graphs of position vs. time, velocity vs. time and acceleration vs. …

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    • [DOC File]Chapter 10

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      Jan 22, 2013 · simple harmonic motion. regular, repeated, friction-free motion in which the restoring force has the mathematical form F = - kx. Equations and Symbols where. Fs = the restoring force of the spring. k = spring constant . x = displacement from equilibrium . position. PEelastic = elastic (spring) potential . energy (denoted Us on the AP . exam) A = amplitude

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    • [DOC File]Simple harmonic motion-

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      A general equation describing simple harmonic motion is , where x is the displacement, A is the amplitude of oscillation, f is the frequency, t is the elapsed time, and φ is the phase of oscillation. If there is no displacement at time t = 0, the phase φ = 0. A motion with frequency f has period .

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    • [DOC File]LAB 10 - HARMONIC MOTION AND THE PENDULUM

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      harmonic motion The simple harmonic oscillator is of great importance in physics because many more complicated systems can be treated to a good approximation as harmonic oscillators. Examples are the pendulum, a stretched string (indeed all musical instruments), the …

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    • [DOC File]Important Equations

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      Simple Harmonic Motion: (for an object oscillating in simple harmonic motion: Note: v = 0 at x = +A; v = vmax at x = 0. a = 0 when x = 0; a=amax at x = +A (for a mass m oscillating on a spring with spring constant k: Elastic Potential Energy: Conservation of Energy: Simple Pendulum: (for a simple pendulum (for small angles):

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    • [DOC File]Lab #11: Simple Harmonic Motion of a Linear Oscillator

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      Simple Harmonic Motion of a Linear Oscillator. Reading Assignment: Chapter 16 – Section 1- Section 9. Introduction: Imagine a point P that oscillates back and forth with simple harmonic motion. The period, T, the frequency, f, and the angular frequency, , of point P are defined using the following equations.

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    • [DOC File]Explore Sound

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      Simple Pendulum. The motion of a pendulum can be treated as simple harmonic if: there is no friction and . if the displacement of the mass m from the equilibrium position is small, ≤ 15o . The period of a pendulum undergoing simple harmonic motion is described by: T = 2 , …

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    • [DOC File]Simple Harmonic Motion

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      Aug 18, 2011 · Using the basic equations for Simple Harmonic Motion, A = -w2x. A = -(k/m)x. One yields . w = sqrt(k/m) T = 2pi*sqrt(m/k) By squaring both sides, T2 = (4pi2/k) M. Thus, using both equations, T2 = (4pi2/k) M. T2 = _____M. One can equate the two slopes, (4pi2/k) = _____ k = (4pi2/ ) = Conclusion: The force constant was found to be _____

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    • [DOC File]TAP302-0: Getting mathematical

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      TAP 302-3: Graphs of simple harmonic motion. Discussion: Equations of SHM. These graphs can be represented by equations. For displacement: x = A sin 2 ft or x = A sin t. Explain that f is the frequency of the oscillation, and is related to the period T by f = 1/T. The amplitude of the oscillation is A.

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    • [DOC File]Physics 103 - St. Bonaventure University

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      1. Simple Harmonic Motion. Harmonic means there is a sine or cosine in it. a. Description. Let y be the displacement of a particle from its equilibrium position. Then by definition, if the particle is executing simple harmonic motion its position as a function of time is. A is the amplitude, the maximum displacement either side of equilibrium.

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